Centre for Mechanochemical Cell Biology, Division of Biomedical Sciences, Warwick Medical School, University of Warwick, Coventry, CV4 7AL, UK.
Department of Biochemistry, Indian Institute of Science, Bangalore, India.
Nat Commun. 2022 Jun 13;13(1):3398. doi: 10.1038/s41467-022-30656-2.
The ESCRT machinery, comprising of multiple proteins and subcomplexes, is crucial for membrane remodelling in eukaryotic cells, in processes that include ubiquitin-mediated multivesicular body formation, membrane repair, cytokinetic abscission, and virus exit from host cells. This ESCRT system appears to have simpler, ancient origins, since many archaeal species possess homologues of ESCRT-III and Vps4, the components that execute the final membrane scission reaction, where they have been shown to play roles in cytokinesis, extracellular vesicle formation and viral egress. Remarkably, metagenome assemblies of Asgard archaea, the closest known living relatives of eukaryotes, were recently shown to encode homologues of the entire cascade involved in ubiquitin-mediated membrane remodelling, including ubiquitin itself, components of the ESCRT-I and ESCRT-II subcomplexes, and ESCRT-III and Vps4. Here, we explore the phylogeny, structure, and biochemistry of Asgard homologues of the ESCRT machinery and the associated ubiquitylation system. We provide evidence for the ESCRT-I and ESCRT-II subcomplexes being involved in ubiquitin-directed recruitment of ESCRT-III, as it is in eukaryotes. Taken together, our analyses suggest a pre-eukaryotic origin for the ubiquitin-coupled ESCRT system and a likely path of ESCRT evolution via a series of gene duplication and diversification events.
ESCRT 机器由多种蛋白质和亚复合物组成,对于真核细胞中的膜重塑至关重要,其过程包括泛素介导的多泡体形成、膜修复、胞质分裂分离和病毒从宿主细胞中逸出。这个 ESCRT 系统似乎具有更简单、更古老的起源,因为许多古菌物种都拥有 ESCRT-III 和 Vps4 的同源物,这两种成分执行最终的膜分裂反应,在古菌中已被证明在胞质分裂、细胞外囊泡形成和病毒逸出中发挥作用。值得注意的是,最近的研究表明,Asgard 古菌的宏基因组组装(真核生物最接近的已知活体亲属)编码了涉及泛素介导的膜重塑的整个级联反应的同源物,包括泛素本身、ESCRT-I 和 ESCRT-II 亚复合物的成分以及 ESCRT-III 和 Vps4。在这里,我们探讨了 Asgard 古菌 ESCRT 机器和相关泛素化系统的系统发育、结构和生物化学。我们提供了证据表明 ESCRT-I 和 ESCRT-II 亚复合物参与了 ESCRT-III 的泛素定向募集,就像在真核生物中一样。总的来说,我们的分析表明,泛素偶联的 ESCRT 系统具有原核生物起源,并且可能通过一系列基因复制和多样化事件进化而来。